An energy-efficient method for creating composite materials based on SiC modified with oxide eutectic compositions with high mechanical characteristics has been proposed. The effect of varying the particle size distribution on the physical and mechanical properties of ceramics has been investigated. The ratio of fractions was determined, a dense material with high strength and crack resistance was obtained. The developed ceramics is promising as a structural one, including as armor protection.
Zhitnyuk S.V., Makarov N.A., Guseva T.V. New armored ceramic materials based on silicon carbide // Glass and ceramics. 2014.? 1.S. 7? 10.
Zhitnyuk SV, Makarov NA, Guseva TV New Silicon Carbide Based Ceramic Armor Materials // Glass and Ceram. 2014. V. 71. N 1? 2.P. 6? 9.
Matthews F., Rawlings R. Composite materials. Mechanics and technology: per. from English Moscow: Tekhnosfera, 2004.408 p.
Tretyakov Yu. D. Ceramics in the past, present and future // Soros educational journal. Chemistry. 1998.? 6. P. 53.
Balkevich V. L. Technical ceramics. Moscow: Stroyizdat, 1984.256 p.
Evteev A.A., Lemeshev D.O., Zhitnyuk S.V., Makarov N.A. Calculation of optimal firing modes for ceramics based on aluminum and zirconium oxides // Glass and Ceramics. 2014.? 8, p. 15? 21.
Evteev AA, Lemeshev DO, Zhitnyuk SV, Makarov NA Calculation of the Optimal Firing Regimes for Ceramics Based on Zirconium and Aluminum Dioxide // Glass and Ceram. 2014. V. 71. N 7? 8.P. 275? 280.
Highly refractory materials: collection of articles. Art. / ed. D. N. Poluboyarinova, D. S. Rutman. Moscow: Metallurgy, 1966.224 p.
The article can be purchased
electronic!
PDF format
700 руб
UDK 666.3:666.76
Article type:
Science for ceramic production
Make a request